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A systematic approach to error isolation in computerized wastewater simulation models

机译:计算机化废水模拟模型中错误隔离的系统方法

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Activated sludge models are used extensively in the study of wastewater treatment processes. While various commercial implementations of these models are available, there are many people who need to code models themselves using the simulation packages available to them, Quality assurance of such models is difficult. While benchmarking problems have been developed and are available, the comparison of simulation data with that of commercial models leads only to the detection, not the isolation of errors. To identify the errors in the code is time-consuming. In this paper, we address the problem by developing a systematic and largely automated approach to the isolation of coding errors. There are three steps: firstly, possible errors are classified according to their place in the model structure and a feature matrix is established for each class of errors. Secondly, an observer is designed to generate residuals, such that each class of errors imposes a subspace, spanned by its feature matrix, on the residuals. Finally. localising the residuals in a subspace isolates coding errors. The algorithm proved capable of rapidly and reliably isolating a variety of single and simultaneous errors in a case study using the ASM 1 activated sludge model. In this paper a newly coded model was verified against a known implementation. The method is also applicable to simultaneous verification of any two independent implementations, hence is useful in commercial model development. [References: 10]
机译:活性污泥模型被广泛用于废水处理过程的研究中。尽管可以使用这些模型的各种商业实现,但仍有许多人需要使用对他们可用的仿真包自己对模型进行编码,但是很难保证此类模型的质量。虽然已经开发出基准问题并可以使用,但是将模拟数据与商业模型进行比较只能导致检测,而不能隔离错误。识别代码中的错误非常耗时。在本文中,我们通过开发一种系统的,高度自动化的方法来隔离编码错误来解决该问题。分为三个步骤:首先,根据可能的错误在模型结构中的位置对它们进行分类,并为每类错误建立一个特征矩阵。其次,将观察者设计为生成残差,以使每一类错误都在残差上施加一个子空间,该子空间由其特征矩阵跨越。最后。在子空间中定位残差可隔离编码错误。在使用ASM 1活性污泥模型的案例研究中,该算法被证明能够快速可靠地隔离各种单一和同时发生的错误。在本文中,针对已知实现对新编码的模型进行了验证。该方法还适用于同时验证任何两个独立的实现,因此在商业模型开发中很有用。 [参考:10]

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